Welcome to the IKCEST

INFRARED PHYSICS & TECHNOLOGY | Vol.77, Issue. | 2016-06-29 | Pages 10

INFRARED PHYSICS & TECHNOLOGY

Reproducing kernel hilbert space based single infrared image super resolution

Yang, YL    Dong, LX   Shen, W    Deng, LJ    Xi, N    Zhou, ZX    Chen, LL    Song, B    Cheng, Y   
Abstract

The spatial resolution of Infrared (IR) images is limited by lens optical diffraction, sensor array pitch size and pixel dimension. In this work, a robust model is proposed to reconstruct high resolution infrared image via a single low resolution sampling, where the image features are discussed and classified as reflective, cooled emissive and uncooled emissive based on infrared irradiation source. A spline based reproducing kernel hilbert space and approximative heaviside function are deployed to model smooth part and edge component of image respectively. By adjusting the parameters of heaviside function, the proposed model can enhance distinct part of images. The experimental results show that the model is applicable on both reflective and emissive low resolution infrared images to improve thermal contrast. The overall outcome produces a high resolution IR image, which makes IR camera better measurement accuracy and observes more details at long distance. (C) 2016 Elsevier B.V. All rights reserved.

Original Text (This is the original text for your reference.)

Reproducing kernel hilbert space based single infrared image super resolution

The spatial resolution of Infrared (IR) images is limited by lens optical diffraction, sensor array pitch size and pixel dimension. In this work, a robust model is proposed to reconstruct high resolution infrared image via a single low resolution sampling, where the image features are discussed and classified as reflective, cooled emissive and uncooled emissive based on infrared irradiation source. A spline based reproducing kernel hilbert space and approximative heaviside function are deployed to model smooth part and edge component of image respectively. By adjusting the parameters of heaviside function, the proposed model can enhance distinct part of images. The experimental results show that the model is applicable on both reflective and emissive low resolution infrared images to improve thermal contrast. The overall outcome produces a high resolution IR image, which makes IR camera better measurement accuracy and observes more details at long distance. (C) 2016 Elsevier B.V. All rights reserved.

+More

Cite this article
APA

APA

MLA

Chicago

Yang, YL ,Dong, LX,Shen, W ,Deng, LJ ,Xi, N ,Zhou, ZX ,Chen, LL ,Song, B ,Cheng, Y ,.Reproducing kernel hilbert space based single infrared image super resolution. 77 (),10.

Disclaimer: The translated content is provided by third-party translation service providers, and IKCEST shall not assume any responsibility for the accuracy and legality of the content.
Translate engine
Article's language
English
中文
Pусск
Français
Español
العربية
Português
Kikongo
Dutch
kiswahili
هَوُسَ
IsiZulu
Action
Recommended articles

Report

Select your report category*



Reason*



By pressing send, your feedback will be used to improve IKCEST. Your privacy will be protected.

Submit
Cancel